The physiological role of proteins is frequently linked to interactions with non-protein ligands or posttranslational modifications. Structural characterization of these complexes or modified proteins by NMR may be difficult as the ligands are usually not available in an isotope-labeled form and NMR spectra may suffer from signal overlap. Here, we present an optimized approach that uses specific NMR isotope-labeling schemes for overcoming both hurdles. This approach enabled the high-resolution structure determination of the farnesylated C-terminal domain of the peroxisomal protein PEX19. The approach combines specific C-13, N-15 and H-2 isotope labeling with tailored NMR experiments to (i) unambiguously identify the NMR frequencies and the ...
Sequence specific resonance assignment constitutes an important step towards high-resolution structu...
An NMR approach is described which yields the methyl resonance assignments of alanine, threonine, va...
Selective isotope labeling is central in NMR experiments and often allows to push the limits on the ...
The size of macromolecular structures that can be solved by nuclear magnetic resonance (NMR) spectro...
Isotope labelling is a very powerful tool in NMR studies of proteins and has been employed in variou...
Although NMR spectroscopy is usually employed for structural studies of relatively small proteins, t...
Selective isotope labelling is a commonly used approach to improve the spectral resolution in NMR sp...
International audienceNuclear magnetic resonance (NMR) spectroscopy is a uniquely powerful tool for ...
Proteins come together in macromolecular assemblies, recognizing and binding to each other through t...
Isotope labelling is a very powerful tool in NMR studies of proteins and has been employed in variou...
AbstractWe present here a stable isotope labeling technique for proteins, which seeks the appropriat...
Selective isotope labeling of methyl groups allows for atomic-resolution insight into the structures...
The study of protein structure, dynamics and function by NMR spectroscopy commonly requires samples ...
In the last 15years substantial advances have been made to place isotope labels in native and glycos...
Direct methods in NMR based structure determination start from an unassigned ensemble of unconnected...
Sequence specific resonance assignment constitutes an important step towards high-resolution structu...
An NMR approach is described which yields the methyl resonance assignments of alanine, threonine, va...
Selective isotope labeling is central in NMR experiments and often allows to push the limits on the ...
The size of macromolecular structures that can be solved by nuclear magnetic resonance (NMR) spectro...
Isotope labelling is a very powerful tool in NMR studies of proteins and has been employed in variou...
Although NMR spectroscopy is usually employed for structural studies of relatively small proteins, t...
Selective isotope labelling is a commonly used approach to improve the spectral resolution in NMR sp...
International audienceNuclear magnetic resonance (NMR) spectroscopy is a uniquely powerful tool for ...
Proteins come together in macromolecular assemblies, recognizing and binding to each other through t...
Isotope labelling is a very powerful tool in NMR studies of proteins and has been employed in variou...
AbstractWe present here a stable isotope labeling technique for proteins, which seeks the appropriat...
Selective isotope labeling of methyl groups allows for atomic-resolution insight into the structures...
The study of protein structure, dynamics and function by NMR spectroscopy commonly requires samples ...
In the last 15years substantial advances have been made to place isotope labels in native and glycos...
Direct methods in NMR based structure determination start from an unassigned ensemble of unconnected...
Sequence specific resonance assignment constitutes an important step towards high-resolution structu...
An NMR approach is described which yields the methyl resonance assignments of alanine, threonine, va...
Selective isotope labeling is central in NMR experiments and often allows to push the limits on the ...